loadbsd.c revision 1.18 1 1.18 chopps /* $NetBSD: loadbsd.c,v 1.18 1996/01/28 20:01:10 chopps Exp $ */
2 1.15 cgd
3 1.7 chopps /*
4 1.12 chopps * Copyright (c) 1994 Michael L. Hitch
5 1.12 chopps * All rights reserved.
6 1.12 chopps *
7 1.12 chopps * Redistribution and use in source and binary forms, with or without
8 1.12 chopps * modification, are permitted provided that the following conditions
9 1.12 chopps * are met:
10 1.12 chopps * 1. Redistributions of source code must retain the above copyright
11 1.12 chopps * notice, this list of conditions and the following disclaimer.
12 1.12 chopps * 2. Redistributions in binary form must reproduce the above copyright
13 1.12 chopps * notice, this list of conditions and the following disclaimer in the
14 1.12 chopps * documentation and/or other materials provided with the distribution.
15 1.12 chopps * 3. All advertising materials mentioning features or use of this software
16 1.12 chopps * must display the following acknowledgement:
17 1.12 chopps * This product includes software developed by Michael L. Hitch.
18 1.12 chopps * 4. The name of the author may not be used to endorse or promote products
19 1.12 chopps * derived from this software without specific prior written permission
20 1.12 chopps *
21 1.12 chopps * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
22 1.12 chopps * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
23 1.12 chopps * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
24 1.12 chopps * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
25 1.12 chopps * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
26 1.12 chopps * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27 1.12 chopps * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28 1.12 chopps * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29 1.12 chopps * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
30 1.12 chopps * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31 1.7 chopps */
32 1.7 chopps
33 1.1 mw #include <sys/types.h>
34 1.1 mw #include <a.out.h>
35 1.1 mw #include <stdio.h>
36 1.8 chopps #include <unistd.h>
37 1.12 chopps #include <errno.h>
38 1.12 chopps #include <stdarg.h>
39 1.12 chopps #include <signal.h>
40 1.12 chopps #ifdef __NetBSD__
41 1.12 chopps #include <err.h>
42 1.12 chopps #endif
43 1.1 mw #include <exec/types.h>
44 1.1 mw #include <exec/execbase.h>
45 1.1 mw #include <exec/memory.h>
46 1.10 chopps #include <exec/resident.h>
47 1.12 chopps #include <graphics/gfxbase.h>
48 1.1 mw #include <libraries/configregs.h>
49 1.12 chopps #include <libraries/configvars.h>
50 1.12 chopps #include <libraries/expansion.h>
51 1.1 mw #include <libraries/expansionbase.h>
52 1.1 mw
53 1.1 mw #include <inline/exec.h>
54 1.1 mw #include <inline/expansion.h>
55 1.5 mw #include <inline/graphics.h>
56 1.1 mw
57 1.3 mw /* Get definitions for boothowto */
58 1.3 mw #include "reboot.h"
59 1.3 mw
60 1.1 mw #undef __LDPGSZ
61 1.1 mw #define __LDPGSZ 8192
62 1.1 mw
63 1.12 chopps #ifndef __NetBSD__
64 1.12 chopps #ifndef __P
65 1.12 chopps #ifdef __STDC__
66 1.12 chopps #define __P(x) x
67 1.12 chopps #else
68 1.12 chopps #define __P(x)
69 1.12 chopps #endif
70 1.12 chopps #endif
71 1.12 chopps void err __P((int, const char *, ...));
72 1.12 chopps void errx __P((int, const char *, ...));
73 1.12 chopps void warn __P((const char *, ...));
74 1.12 chopps void warnx __P((const char *, ...));
75 1.12 chopps #endif
76 1.6 chopps
77 1.9 chopps /*
78 1.9 chopps * Version history:
79 1.10 chopps * 1.x Kernel parameter passing version check.
80 1.10 chopps * 2.0 Added symbol table end address and symbol table support.
81 1.10 chopps * 2.1 03/23/94 - Round up end of fastram segment.
82 1.10 chopps * Check fastram segment size for minimum of 2M.
83 1.10 chopps * Use largest segment of highest priority if -p option.
84 1.10 chopps * Print out fastram size in KB if not a multiple of MB.
85 1.10 chopps * 2.2 03/24/94 - Zero out all unused registers.
86 1.10 chopps * Started version history comment.
87 1.10 chopps * 2.3 04/26/94 - Added -D option to enter debugger on boot.
88 1.10 chopps * 2.4 04/30/94 - Cpuid includes base machine type.
89 1.10 chopps * Also check if CPU is capable of running NetBSD.
90 1.11 chopps * 2.5 05/17/94 - Add check for "A3000 bonus".
91 1.11 chopps * 2.6 06/05/94 - Added -c option to override machine type.
92 1.12 chopps * 2.7 06/15/94 - Pass E clock frequency.
93 1.13 chopps * 2.8 06/22/94 - Fix supervisor stack usage.
94 1.14 chopps * 2.9 06/26/94 - Use PAL flag for E clock freq on pre 2.0 WB
95 1.14 chopps * Added AGA enable parameter
96 1.16 chopps * 2.10 12/22/94 - Use FindResident() & OpenResource() for machine
97 1.16 chopps * type detection.
98 1.16 chopps * Add -n flag & option for non-contiguous memory.
99 1.16 chopps * 01/28/95 - Corrected -n on usage & help messages.
100 1.17 jtc * 2.11 03/12/95 - Check kernel size against chip memory size.
101 1.17 jtc * 2.12 11/11/95 - Add -I option to inhibit synchronous transfer
102 1.17 jtc * 11/12/95 - New kernel parameter version - to support passing
103 1.17 jtc * a kernel parameter data structure and support moving kernel
104 1.17 jtc * image to fastmem rather than chipmem.
105 1.9 chopps */
106 1.17 jtc static const char _version[] = "$VER: LoadBSD 2.12 (12.11.95)";
107 1.9 chopps
108 1.12 chopps /*
109 1.12 chopps * Kernel parameter passing version
110 1.12 chopps * 1: first version of loadbsd
111 1.12 chopps * 2: needs esym location passed in a4
112 1.17 jtc * 3: allow kernel image in fastmem rather than chipmem, and
113 1.17 jtc * passing kernel parameters in a data structure
114 1.12 chopps */
115 1.17 jtc #define KERNEL_PARAMETER_VERSION 3
116 1.10 chopps
117 1.12 chopps #define MAXMEMSEG 16
118 1.12 chopps struct boot_memlist {
119 1.12 chopps u_int m_nseg; /* num_mem; */
120 1.12 chopps struct boot_memseg {
121 1.12 chopps u_int ms_start;
122 1.12 chopps u_int ms_size;
123 1.12 chopps u_short ms_attrib;
124 1.12 chopps short ms_pri;
125 1.12 chopps } m_seg[MAXMEMSEG];
126 1.12 chopps };
127 1.12 chopps struct boot_memlist memlist;
128 1.12 chopps struct boot_memlist *kmemlist;
129 1.12 chopps
130 1.12 chopps
131 1.12 chopps void get_mem_config __P((void **, u_long *, u_long *));
132 1.12 chopps void get_cpuid __P((void));
133 1.12 chopps void get_eclock __P((void));
134 1.14 chopps void get_AGA __P((void));
135 1.12 chopps void usage __P((void));
136 1.12 chopps void verbose_usage __P((void));
137 1.12 chopps void Version __P((void));
138 1.5 mw
139 1.12 chopps extern struct ExecBase *SysBase;
140 1.5 mw extern char *optarg;
141 1.5 mw extern int optind;
142 1.5 mw
143 1.12 chopps int k_flag;
144 1.12 chopps int p_flag;
145 1.12 chopps int t_flag;
146 1.12 chopps int reqmemsz;
147 1.12 chopps int S_flag;
148 1.17 jtc u_long I_flag;
149 1.12 chopps u_long cpuid;
150 1.12 chopps long eclock_freq;
151 1.16 chopps long amiga_flags;
152 1.12 chopps char *program_name;
153 1.12 chopps char *kname;
154 1.12 chopps struct ExpansionBase *ExpansionBase;
155 1.12 chopps struct GfxBase *GfxBase;
156 1.6 chopps
157 1.1 mw
158 1.10 chopps int
159 1.12 chopps main(argc, argv)
160 1.12 chopps int argc;
161 1.12 chopps char **argv;
162 1.1 mw {
163 1.12 chopps struct exec e;
164 1.12 chopps struct ConfigDev *cd, *kcd;
165 1.12 chopps u_long fmemsz, cmemsz;
166 1.12 chopps int fd, boothowto, ksize, textsz, stringsz, ncd, i, mem_ix, ch;
167 1.12 chopps u_short *kvers;
168 1.12 chopps int *nkcd;
169 1.12 chopps u_char *kp;
170 1.12 chopps void *fmem;
171 1.12 chopps char *esym;
172 1.12 chopps
173 1.12 chopps program_name = argv[0];
174 1.12 chopps boothowto = RB_SINGLE;
175 1.12 chopps
176 1.12 chopps if (argc < 2)
177 1.12 chopps usage();
178 1.12 chopps if ((GfxBase = (void *)OpenLibrary(GRAPHICSNAME, 0)) == NULL)
179 1.12 chopps err(20, "can't open graphics library");
180 1.12 chopps if ((ExpansionBase=(void *)OpenLibrary(EXPANSIONNAME, 0)) == NULL)
181 1.12 chopps err(20, "can't open expansion library");
182 1.12 chopps
183 1.17 jtc while ((ch = getopt(argc, argv, "aAbc:DhI:km:n:ptSV")) != EOF) {
184 1.12 chopps switch (ch) {
185 1.12 chopps case 'k':
186 1.12 chopps k_flag = 1;
187 1.12 chopps break;
188 1.12 chopps case 'a':
189 1.12 chopps boothowto &= ~(RB_SINGLE);
190 1.12 chopps boothowto |= RB_AUTOBOOT;
191 1.12 chopps break;
192 1.12 chopps case 'b':
193 1.12 chopps boothowto |= RB_ASKNAME;
194 1.12 chopps break;
195 1.12 chopps case 'p':
196 1.12 chopps p_flag = 1;
197 1.12 chopps break;
198 1.12 chopps case 't':
199 1.12 chopps t_flag = 1;
200 1.12 chopps break;
201 1.12 chopps case 'm':
202 1.12 chopps reqmemsz = atoi(optarg) * 1024;
203 1.12 chopps break;
204 1.12 chopps case 'V':
205 1.12 chopps fprintf(stderr,"%s\n",_version + 6);
206 1.12 chopps break;
207 1.12 chopps case 'S':
208 1.12 chopps S_flag = 1;
209 1.12 chopps break;
210 1.12 chopps case 'D':
211 1.12 chopps boothowto |= RB_KDB;
212 1.12 chopps break;
213 1.12 chopps case 'c':
214 1.12 chopps cpuid = atoi(optarg) << 16;
215 1.12 chopps break;
216 1.14 chopps case 'A':
217 1.16 chopps amiga_flags |= 1;
218 1.16 chopps break;
219 1.16 chopps case 'n':
220 1.16 chopps i = atoi(optarg);
221 1.16 chopps if (i >= 0 && i <= 3)
222 1.16 chopps amiga_flags |= i << 1;
223 1.16 chopps else
224 1.16 chopps err(20, "-n option must be 0, 1, 2, or 3");
225 1.14 chopps break;
226 1.17 jtc case 'I':
227 1.17 jtc I_flag = strtoul(optarg, NULL, 16);
228 1.17 jtc break;
229 1.12 chopps case 'h':
230 1.12 chopps verbose_usage();
231 1.12 chopps default:
232 1.12 chopps usage();
233 1.12 chopps }
234 1.12 chopps }
235 1.12 chopps argc -= optind;
236 1.12 chopps argv += optind;
237 1.12 chopps
238 1.12 chopps if (argc != 1)
239 1.12 chopps usage();
240 1.12 chopps kname = argv[0];
241 1.12 chopps
242 1.12 chopps if ((fd = open(kname, 0)) < 0)
243 1.12 chopps err(20, "open");
244 1.12 chopps if (read(fd, &e, sizeof(e)) != sizeof(e))
245 1.12 chopps err(20, "reading exec");
246 1.12 chopps if (e.a_magic != NMAGIC)
247 1.12 chopps err(20, "unknown binary");
248 1.12 chopps
249 1.12 chopps for (cd = 0, ncd = 0; cd = FindConfigDev(cd, -1, -1); ncd++)
250 1.12 chopps ;
251 1.12 chopps get_mem_config(&fmem, &fmemsz, &cmemsz);
252 1.12 chopps get_cpuid();
253 1.12 chopps get_eclock();
254 1.14 chopps get_AGA();
255 1.12 chopps
256 1.12 chopps textsz = (e.a_text + __LDPGSZ - 1) & (-__LDPGSZ);
257 1.12 chopps esym = NULL;
258 1.12 chopps ksize = textsz + e.a_data + e.a_bss + ncd * sizeof(*cd)
259 1.12 chopps + 4 + memlist.m_nseg * sizeof(struct boot_memseg) + 4;
260 1.12 chopps
261 1.12 chopps /*
262 1.12 chopps * get symbol table size & string size
263 1.12 chopps * (should check kernel version to see if it will handle it)
264 1.12 chopps */
265 1.12 chopps if (S_flag && e.a_syms) {
266 1.12 chopps if (lseek(fd, e.a_text + e.a_data + e.a_syms, SEEK_CUR) <= 0
267 1.12 chopps || read(fd, &stringsz, 4) != 4
268 1.12 chopps || lseek(fd, sizeof(e), SEEK_SET) < 0)
269 1.12 chopps err(20, "lseek for symbols");
270 1.12 chopps ksize += e.a_syms + 4 + stringsz;
271 1.12 chopps }
272 1.12 chopps
273 1.17 jtc if (ksize >= cmemsz) {
274 1.17 jtc printf("Kernel size %d exceeds Chip Memory of %d\n",
275 1.17 jtc ksize, cmemsz);
276 1.17 jtc err(20, "Insufficient Chip Memory for kernel");
277 1.17 jtc }
278 1.12 chopps kp = (u_char *)malloc(ksize);
279 1.12 chopps if (t_flag) {
280 1.12 chopps for (i = 0; i < memlist.m_nseg; ++i) {
281 1.12 chopps printf("mem segment %d: start=%08lx size=%08lx"
282 1.12 chopps " attribute=%04lx pri=%d\n",
283 1.12 chopps i + 1, memlist.m_seg[i].ms_start,
284 1.12 chopps memlist.m_seg[i].ms_size,
285 1.12 chopps memlist.m_seg[i].ms_attrib,
286 1.12 chopps memlist.m_seg[i].ms_pri);
287 1.10 chopps }
288 1.17 jtc printf("kernel size: %d\n", ksize);
289 1.12 chopps }
290 1.12 chopps if (kp == NULL)
291 1.12 chopps err(20, "failed malloc %d\n", ksize);
292 1.12 chopps
293 1.12 chopps if (read(fd, kp, e.a_text) != e.a_text
294 1.12 chopps || read(fd, kp + textsz, e.a_data) != e.a_data)
295 1.12 chopps err(20, "unable to read kernel image\n");
296 1.12 chopps
297 1.12 chopps if (k_flag) {
298 1.12 chopps fmem += 4 * 1024 * 1024;
299 1.12 chopps fmemsz -= 4 * 1024 * 1024;
300 1.12 chopps }
301 1.1 mw
302 1.12 chopps if (reqmemsz && reqmemsz <= fmemsz)
303 1.12 chopps fmemsz = reqmemsz;
304 1.12 chopps if (boothowto & RB_AUTOBOOT)
305 1.12 chopps printf("Autobooting...");
306 1.12 chopps if (boothowto & RB_ASKNAME)
307 1.12 chopps printf("Askboot...");
308 1.12 chopps
309 1.12 chopps printf("Using %d%c FASTMEM at 0x%x, %dM CHIPMEM\n",
310 1.12 chopps (fmemsz & 0xfffff) ? fmemsz >> 10 : fmemsz >> 20,
311 1.12 chopps (fmemsz & 0xfffff) ? 'K' : 'M', fmem, cmemsz >> 20);
312 1.12 chopps kvers = (u_short *)(kp + e.a_entry - 2);
313 1.12 chopps if (*kvers > KERNEL_PARAMETER_VERSION && *kvers != 0x4e73)
314 1.12 chopps err(20, "newer loadbsd required: %d\n", *kvers);
315 1.17 jtc if (*kvers > 2) {
316 1.17 jtc printf("****************************************************\n");
317 1.17 jtc printf("*** Notice: this kernel has features which require\n");
318 1.17 jtc printf("*** a newer version of loadbsd. To allow the use of\n");
319 1.17 jtc printf("*** any newer features or capabilities, you should\n");
320 1.17 jtc printf("*** update your copy of loadbsd\n");
321 1.17 jtc printf("****************************************************\n");
322 1.17 jtc sleep(3); /* even more time to see that message */
323 1.17 jtc }
324 1.12 chopps if ((cpuid & AFB_68020) == 0)
325 1.12 chopps err(20, "cpu not supported");
326 1.12 chopps /*
327 1.12 chopps * give them a chance to read the information...
328 1.12 chopps */
329 1.12 chopps sleep(2);
330 1.12 chopps
331 1.12 chopps bzero(kp + textsz + e.a_data, e.a_bss);
332 1.12 chopps /*
333 1.12 chopps * If symbols wanted (and kernel can handle them),
334 1.12 chopps * load symbol table & strings and set esym to end.
335 1.12 chopps */
336 1.12 chopps nkcd = (int *)(kp + textsz + e.a_data + e.a_bss);
337 1.12 chopps if (*kvers != 0x4e73 && *kvers > 1 && S_flag && e.a_syms) {
338 1.12 chopps *nkcd++ = e.a_syms;
339 1.12 chopps read(fd, (char *)nkcd, e.a_syms);
340 1.12 chopps nkcd = (int *)((char *)nkcd + e.a_syms);
341 1.12 chopps read(fd, (char *)nkcd, stringsz);
342 1.12 chopps nkcd = (int*)((char *)nkcd + stringsz);
343 1.12 chopps esym = (char *)(textsz + e.a_data + e.a_bss
344 1.12 chopps + e.a_syms + 4 + stringsz);
345 1.10 chopps }
346 1.12 chopps *nkcd = ncd;
347 1.12 chopps
348 1.12 chopps kcd = (struct ConfigDev *)(nkcd + 1);
349 1.12 chopps while(cd = FindConfigDev(cd, -1, -1))
350 1.12 chopps *kcd++ = *cd;
351 1.12 chopps
352 1.12 chopps kmemlist = (struct boot_memlist *)kcd;
353 1.12 chopps kmemlist->m_nseg = memlist.m_nseg;
354 1.12 chopps for (mem_ix = 0; mem_ix < memlist.m_nseg; mem_ix++)
355 1.12 chopps kmemlist->m_seg[mem_ix] = memlist.m_seg[mem_ix];
356 1.12 chopps /*
357 1.12 chopps * if test option set, done
358 1.12 chopps */
359 1.12 chopps if (t_flag)
360 1.12 chopps exit(0);
361 1.12 chopps
362 1.12 chopps /*
363 1.12 chopps * XXX AGA startup - may need more
364 1.12 chopps */
365 1.16 chopps LoadView(NULL); /* Don't do this if AGA active? */
366 1.12 chopps startit(kp, ksize, e.a_entry, fmem, fmemsz, cmemsz, boothowto, esym,
367 1.17 jtc cpuid, eclock_freq, amiga_flags, I_flag);
368 1.12 chopps /*NOTREACHED*/
369 1.12 chopps }
370 1.1 mw
371 1.1 mw void
372 1.12 chopps get_mem_config(fmem, fmemsz, cmemsz)
373 1.12 chopps void **fmem;
374 1.12 chopps u_long *fmemsz, *cmemsz;
375 1.1 mw {
376 1.12 chopps struct MemHeader *mh, *nmh;
377 1.12 chopps u_int segsz, seg, eseg, nmem;
378 1.12 chopps char mempri;
379 1.12 chopps
380 1.12 chopps nmem = 0;
381 1.12 chopps mempri = -128;
382 1.12 chopps *fmemsz = 0;
383 1.12 chopps *cmemsz = 0;
384 1.12 chopps
385 1.12 chopps /*
386 1.12 chopps * walk thru the exec memory list
387 1.12 chopps */
388 1.12 chopps Forbid();
389 1.12 chopps for (mh = (void *) SysBase->MemList.lh_Head;
390 1.12 chopps nmh = (void *) mh->mh_Node.ln_Succ; mh = nmh, nmem++) {
391 1.12 chopps memlist.m_seg[nmem].ms_attrib = mh->mh_Attributes;
392 1.12 chopps memlist.m_seg[nmem].ms_pri = mh->mh_Node.ln_Pri;
393 1.12 chopps seg = (u_int)mh->mh_Lower;
394 1.12 chopps eseg = (u_int)mh->mh_Upper;
395 1.12 chopps segsz = eseg - seg;
396 1.12 chopps memlist.m_seg[nmem].ms_size = segsz;
397 1.12 chopps memlist.m_seg[nmem].ms_start = seg;
398 1.12 chopps
399 1.12 chopps if (mh->mh_Attributes & MEMF_CHIP) {
400 1.12 chopps /*
401 1.12 chopps * there should hardly be more than one entry for
402 1.12 chopps * chip mem, but handle it the same nevertheless
403 1.12 chopps * cmem always starts at 0, so include vector area
404 1.12 chopps */
405 1.12 chopps memlist.m_seg[nmem].ms_start = seg = 0;
406 1.12 chopps /*
407 1.12 chopps * round to multiple of 512K
408 1.12 chopps */
409 1.12 chopps segsz = (segsz + 512 * 1024 - 1) & -(512 * 1024);
410 1.12 chopps memlist.m_seg[nmem].ms_size = segsz;
411 1.12 chopps if (segsz > *cmemsz)
412 1.12 chopps *cmemsz = segsz;
413 1.12 chopps continue;
414 1.12 chopps }
415 1.12 chopps /*
416 1.12 chopps * some heuristics..
417 1.12 chopps */
418 1.12 chopps seg &= -__LDPGSZ;
419 1.12 chopps eseg = (eseg + __LDPGSZ - 1) & -__LDPGSZ;
420 1.12 chopps
421 1.12 chopps /*
422 1.12 chopps * get the mem back stolen by incore kickstart on
423 1.12 chopps * A3000 with V36 bootrom.
424 1.12 chopps */
425 1.12 chopps if (eseg == 0x07f80000)
426 1.12 chopps eseg = 0x08000000;
427 1.12 chopps
428 1.12 chopps /*
429 1.12 chopps * or by zkick on a A2000.
430 1.12 chopps */
431 1.12 chopps if (seg == 0x280000 &&
432 1.12 chopps strcmp(mh->mh_Node.ln_Name, "zkick memory") == 0)
433 1.12 chopps seg = 0x200000;
434 1.12 chopps
435 1.12 chopps segsz = eseg - seg;
436 1.12 chopps memlist.m_seg[nmem].ms_start = seg;
437 1.12 chopps memlist.m_seg[nmem].ms_size = segsz;
438 1.12 chopps /*
439 1.12 chopps * If this segment is smaller than 2M,
440 1.12 chopps * don't use it to load the kernel
441 1.12 chopps */
442 1.12 chopps if (segsz < 2 * 1024 * 1024)
443 1.12 chopps continue;
444 1.12 chopps /*
445 1.12 chopps * if p_flag is set, select memory by priority
446 1.12 chopps * instead of size
447 1.12 chopps */
448 1.12 chopps if ((!p_flag && segsz > *fmemsz) || (p_flag &&
449 1.12 chopps mempri <= mh->mh_Node.ln_Pri && segsz > *fmemsz)) {
450 1.12 chopps *fmemsz = segsz;
451 1.12 chopps *fmem = (void *)seg;
452 1.12 chopps mempri = mh->mh_Node.ln_Pri;
453 1.12 chopps }
454 1.1 mw }
455 1.12 chopps memlist.m_nseg = nmem;
456 1.12 chopps Permit();
457 1.1 mw }
458 1.1 mw
459 1.10 chopps /*
460 1.10 chopps * Try to determine the machine ID by searching the resident module list
461 1.10 chopps * for modules only present on specific machines. (Thanks, Bill!)
462 1.10 chopps */
463 1.10 chopps void
464 1.12 chopps get_cpuid()
465 1.10 chopps {
466 1.10 chopps u_long *rl;
467 1.10 chopps struct Resident *rm;
468 1.16 chopps struct Node *rn; /* Resource node entry */
469 1.10 chopps
470 1.11 chopps cpuid |= SysBase->AttnFlags; /* get FPU and CPU flags */
471 1.11 chopps if (cpuid & 0xffff0000) {
472 1.11 chopps switch (cpuid >> 16) {
473 1.11 chopps case 500:
474 1.11 chopps case 600:
475 1.11 chopps case 1000:
476 1.11 chopps case 1200:
477 1.11 chopps case 2000:
478 1.11 chopps case 3000:
479 1.11 chopps case 4000:
480 1.11 chopps return;
481 1.11 chopps default:
482 1.12 chopps printf("machine Amiga %d is not recognized\n",
483 1.11 chopps cpuid >> 16);
484 1.12 chopps exit(1);
485 1.11 chopps }
486 1.11 chopps }
487 1.18 chopps if (FindResident("A4000 Bonus") || FindResident("A4000 bonus")
488 1.18 chopps || FindResident("A1000 Bonus"))
489 1.16 chopps cpuid |= 4000 << 16;
490 1.16 chopps else if (FindResident("A3000 Bonus") || FindResident("A3000 bonus"))
491 1.16 chopps cpuid |= 3000 << 16;
492 1.16 chopps else if (OpenResource("card.resource")) {
493 1.16 chopps /* Test for AGA? */
494 1.16 chopps cpuid |= 1200 << 16;
495 1.10 chopps }
496 1.12 chopps /*
497 1.12 chopps * Nothing found, it's probably an A2000 or A500
498 1.12 chopps */
499 1.16 chopps if ((cpuid >> 16) == 0)
500 1.10 chopps cpuid |= 2000 << 16;
501 1.10 chopps }
502 1.1 mw
503 1.12 chopps void
504 1.12 chopps get_eclock()
505 1.12 chopps {
506 1.12 chopps /* Fix for 1.3 startups? */
507 1.14 chopps if (SysBase->LibNode.lib_Version > 36)
508 1.14 chopps eclock_freq = SysBase->ex_EClockFrequency;
509 1.14 chopps else
510 1.14 chopps eclock_freq = (GfxBase->DisplayFlags & PAL) ?
511 1.14 chopps 709379 : 715909;
512 1.14 chopps }
513 1.14 chopps
514 1.14 chopps void
515 1.14 chopps get_AGA()
516 1.14 chopps {
517 1.14 chopps /*
518 1.14 chopps * Determine if an AGA mode is active
519 1.14 chopps */
520 1.12 chopps }
521 1.12 chopps
522 1.1 mw
523 1.12 chopps asm("
524 1.1 mw .set ABSEXECBASE,4
525 1.1 mw
526 1.1 mw .text
527 1.1 mw .globl _startit
528 1.1 mw
529 1.1 mw _startit:
530 1.1 mw movel sp,a3
531 1.1 mw movel 4:w,a6
532 1.1 mw lea pc@(start_super-.+2),a5
533 1.1 mw jmp a6@(-0x1e) | supervisor-call
534 1.1 mw
535 1.1 mw start_super:
536 1.1 mw movew #0x2700,sr
537 1.1 mw
538 1.1 mw | the BSD kernel wants values into the following registers:
539 1.1 mw | a0: fastmem-start
540 1.1 mw | d0: fastmem-size
541 1.1 mw | d1: chipmem-size
542 1.16 chopps | d3: Amiga specific flags
543 1.12 chopps | d4: E clock frequency
544 1.5 mw | d5: AttnFlags (cpuid)
545 1.3 mw | d7: boothowto
546 1.8 chopps | a4: esym location
547 1.17 jtc | a2: Inhibit sync flags
548 1.10 chopps | All other registers zeroed for possible future requirements.
549 1.1 mw
550 1.14 chopps lea pc@(_startit-.+2),sp | make sure we have a good stack ***
551 1.1 mw movel a3@(4),a1 | loaded kernel
552 1.1 mw movel a3@(8),d2 | length of loaded kernel
553 1.14 chopps | movel a3@(12),sp | entry point in stack pointer
554 1.14 chopps movel a3@(12),sp@- | push entry point ***
555 1.1 mw movel a3@(16),a0 | fastmem-start
556 1.1 mw movel a3@(20),d0 | fastmem-size
557 1.1 mw movel a3@(24),d1 | chipmem-size
558 1.3 mw movel a3@(28),d7 | boothowto
559 1.8 chopps movel a3@(32),a4 | esym
560 1.10 chopps movel a3@(36),d5 | cpuid
561 1.12 chopps movel a3@(40),d4 | E clock frequency
562 1.16 chopps movel a3@(44),d3 | Amiga flags
563 1.17 jtc movel a3@(48),a2 | Inhibit sync flags
564 1.8 chopps subl a5,a5 | target, load to 0
565 1.1 mw
566 1.5 mw btst #3,(ABSEXECBASE)@(0x129) | AFB_68040,SysBase->AttnFlags
567 1.5 mw beq not040
568 1.5 mw
569 1.5 mw | Turn off 68040 MMU
570 1.5 mw
571 1.8 chopps .word 0x4e7b,0xd003 | movec a5,tc
572 1.8 chopps .word 0x4e7b,0xd806 | movec a5,urp
573 1.8 chopps .word 0x4e7b,0xd807 | movec a5,srp
574 1.8 chopps .word 0x4e7b,0xd004 | movec a5,itt0
575 1.8 chopps .word 0x4e7b,0xd005 | movec a5,itt1
576 1.8 chopps .word 0x4e7b,0xd006 | movec a5,dtt0
577 1.8 chopps .word 0x4e7b,0xd007 | movec a5,dtt1
578 1.5 mw bra nott
579 1.5 mw
580 1.5 mw not040:
581 1.1 mw lea pc@(zero-.+2),a3
582 1.1 mw pmove a3@,tc | Turn off MMU
583 1.1 mw lea pc@(nullrp-.+2),a3
584 1.1 mw pmove a3@,crp | Turn off MMU some more
585 1.1 mw pmove a3@,srp | Really, really, turn off MMU
586 1.1 mw
587 1.1 mw | Turn off 68030 TT registers
588 1.1 mw
589 1.1 mw btst #2,(ABSEXECBASE)@(0x129) | AFB_68030,SysBase->AttnFlags
590 1.1 mw beq nott | Skip TT registers if not 68030
591 1.1 mw lea pc@(zero-.+2),a3
592 1.1 mw .word 0xf013,0x0800 | pmove a3@,tt0 (gas only knows about 68851 ops..)
593 1.1 mw .word 0xf013,0x0c00 | pmove a3@,tt1 (gas only knows about 68851 ops..)
594 1.1 mw
595 1.1 mw nott:
596 1.1 mw
597 1.1 mw movew #(1<<9),0xdff096 | disable DMA
598 1.1 mw
599 1.1 mw L0:
600 1.8 chopps moveb a1@+,a5@+
601 1.1 mw subl #1,d2
602 1.1 mw bcc L0
603 1.1 mw
604 1.1 mw
605 1.9 chopps moveq #0,d2 | zero out unused registers
606 1.14 chopps moveq #0,d6 | (might make future compatibility
607 1.14 chopps movel d6,a1 | would have known contents)
608 1.9 chopps movel d6,a3
609 1.9 chopps movel d6,a5
610 1.9 chopps movel d6,a6
611 1.14 chopps | jmp sp@ | jump to kernel entry point
612 1.14 chopps rts | enter kernel at address on stack ***
613 1.1 mw
614 1.1 mw
615 1.1 mw | A do-nothing MMU root pointer (includes the following long as well)
616 1.1 mw
617 1.1 mw nullrp: .long 0x7fff0001
618 1.1 mw zero: .long 0
619 1.1 mw
620 1.1 mw
621 1.1 mw ");
622 1.1 mw
623 1.12 chopps void
624 1.12 chopps usage()
625 1.6 chopps {
626 1.17 jtc fprintf(stderr, "usage: %s [-abhkptADSV] [-c machine] [-m mem] [-n mode] [-I sync-inhibit] kernel\n",
627 1.12 chopps program_name);
628 1.12 chopps exit(1);
629 1.6 chopps }
630 1.6 chopps
631 1.12 chopps
632 1.12 chopps void
633 1.12 chopps verbose_usage()
634 1.12 chopps {
635 1.12 chopps fprintf(stderr, "
636 1.12 chopps NAME
637 1.12 chopps \t%s - loads NetBSD from amiga dos.
638 1.12 chopps SYNOPSIS
639 1.16 chopps \t%s [-abhkptDSV] [-c machine] [-m mem] [-n flags] kernel
640 1.12 chopps OPTIONS
641 1.12 chopps \t-a Boot up to multiuser mode.
642 1.17 jtc \t-A Use AGA display mode, if available.
643 1.12 chopps \t-b Ask for which root device.
644 1.12 chopps \t Its possible to have multiple roots and choose between them.
645 1.12 chopps \t-c Set machine type. [e.g 3000]
646 1.17 jtc \t-D Enter debugger
647 1.16 chopps \t-h This help message.
648 1.17 jtc \t-I Inhibit sync negotiation. Option value is bit-encoded targets.
649 1.12 chopps \t-k Reserve the first 4M of fast mem [Some one else
650 1.12 chopps \t is going to have to answer what that it is used for].
651 1.12 chopps \t-m Tweak amount of available memory, for finding minimum amount
652 1.12 chopps \t of memory required to run. Sets fastmem size to specified
653 1.12 chopps \t size in Kbytes.
654 1.16 chopps \t-n Enable multiple non-contiguous memory: value = 0 (disabled),
655 1.16 chopps \t 1 (two segments), 2 (all avail segments), 3 (same as 2?).
656 1.12 chopps \t-p Use highest priority fastmem segement instead of the largest
657 1.12 chopps \t segment. The higher priority segment is usually faster
658 1.12 chopps \t (i.e. 32 bit memory), but some people have smaller amounts
659 1.12 chopps \t of 32 bit memory.
660 1.17 jtc \t-S Include kernel symbol table.
661 1.12 chopps \t-t This is a *test* option. It prints out the memory
662 1.12 chopps \t list information being passed to the kernel and also
663 1.12 chopps \t exits without actually starting NetBSD.
664 1.12 chopps \t-V Version of loadbsd program.
665 1.12 chopps HISTORY
666 1.12 chopps \tThis version supports Kernel version 720 +\n",
667 1.12 chopps program_name, program_name);
668 1.12 chopps exit(1);
669 1.12 chopps }
670 1.12 chopps
671 1.12 chopps
672 1.12 chopps void
673 1.12 chopps _Vdomessage(doexit, eval, doerrno, fmt, args)
674 1.12 chopps int doexit, doerrno, eval;
675 1.12 chopps const char *fmt;
676 1.12 chopps va_list args;
677 1.12 chopps {
678 1.12 chopps fprintf(stderr, "%s: ", program_name);
679 1.12 chopps if (fmt) {
680 1.12 chopps vfprintf(stderr, fmt, args);
681 1.12 chopps fprintf(stderr, ": ");
682 1.12 chopps }
683 1.12 chopps if (doerrno && errno < sys_nerr) {
684 1.12 chopps fprintf(stderr, "%s", strerror(errno));
685 1.12 chopps if (errno == EINTR || errno == 0) {
686 1.12 chopps int sigs;
687 1.12 chopps sigpending((sigset_t *)&sigs);
688 1.12 chopps printf("%x\n", sigs);
689 1.12 chopps }
690 1.12 chopps }
691 1.12 chopps fprintf(stderr, "\n");
692 1.12 chopps if (doexit)
693 1.12 chopps exit(eval);
694 1.12 chopps }
695 1.12 chopps
696 1.12 chopps void
697 1.12 chopps err(int eval, const char *fmt, ...)
698 1.12 chopps {
699 1.12 chopps va_list ap;
700 1.12 chopps va_start(ap, fmt);
701 1.12 chopps _Vdomessage(1, eval, 1, fmt, ap);
702 1.12 chopps /*NOTREACHED*/
703 1.12 chopps }
704 1.12 chopps
705 1.12 chopps void
706 1.12 chopps errx(int eval, const char *fmt, ...)
707 1.12 chopps {
708 1.12 chopps va_list ap;
709 1.12 chopps va_start(ap, fmt);
710 1.12 chopps _Vdomessage(1, eval, 0, fmt, ap);
711 1.12 chopps /*NOTREACHED*/
712 1.12 chopps }
713 1.12 chopps
714 1.12 chopps void
715 1.12 chopps warn(const char *fmt, ...)
716 1.12 chopps {
717 1.12 chopps va_list ap;
718 1.12 chopps va_start(ap, fmt);
719 1.12 chopps _Vdomessage(0, 0, 1, fmt, ap);
720 1.12 chopps va_end(ap);
721 1.12 chopps }
722 1.12 chopps
723 1.12 chopps void
724 1.12 chopps warnx(const char *fmt, ...)
725 1.6 chopps {
726 1.12 chopps va_list ap;
727 1.12 chopps va_start(ap, fmt);
728 1.12 chopps _Vdomessage(0, 0, 0, fmt, ap);
729 1.12 chopps va_end(ap);
730 1.6 chopps }
731